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Remote Aerospace Engineer Jobs in Arizona (NOW HIRING)

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Remote Aerospace Engineer information

Can you work remotely as a remote aerospace engineer?

Remote aerospace engineers can work remotely, especially in roles involving design, analysis, and software development that do not require physical presence. However, some positions may require on-site work for manufacturing, testing, or collaboration with physical hardware. The availability of remote work depends on the employer and specific job responsibilities.

What are the key skills and qualifications needed to thrive as a remote aerospace engineer, and why are they important?

To thrive as a Remote Aerospace Engineer, you need a strong background in aerospace engineering principles, experience with CAD software, and typically a relevant engineering degree. Familiarity with simulation tools like MATLAB/Simulink, finite element analysis (FEA) programs, and certifications such as PE (Professional Engineer) or aerospace-specific accreditations are highly valued. Exceptional problem-solving, self-motivation, and strong written and verbal communication skills help remote engineers excel in virtual teams. These abilities ensure that you can effectively contribute to complex engineering projects, collaborate across distances, and deliver innovative solutions in a distributed work environment.

What are the typical daily responsibilities of a remote aerospace engineer?

As a Remote Aerospace Engineer, your typical day involves designing and analyzing aerospace components or systems using specialized software, running simulations, and preparing technical documentation. You’ll often participate in virtual meetings with cross-functional teams to discuss project progress, resolve issues, and coordinate deliverables. Clear digital communication and time management are essential as you may collaborate with colleagues in different time zones. Additionally, regular reporting and alignment with project milestones are key aspects of the role, ensuring projects stay on track while working remotely.

What is a remote aerospace engineer?

A Remote Aerospace Engineer designs, analyzes, and improves aircraft, spacecraft, satellites, or related systems while working from a remote location. They use computer-aided design (CAD) software, simulations, and collaboration tools to review technical specifications and develop innovative aerospace solutions. Responsibilities may include structural analysis, propulsion system development, or avionics engineering. Remote aerospace engineers communicate with teams via video calls, emails, and cloud-based platforms to ensure seamless project execution. This role offers flexibility while still requiring strong technical expertise and problem-solving skills.

What are the most commonly searched types of Aerospace Engineer jobs in Arizona? The most popular types of Aerospace Engineer jobs in Arizona are:
What cities in Arizona are hiring for Remote Aerospace Engineer jobs? Cities in Arizona with the most Remote Aerospace Engineer job openings:
Infographic showing various Remote Aerospace Engineer job openings in Arizona as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% Remote job distribution.

Senior Embedded Platform / Multicore Performance Engineer

Quest Defense Systems & Solutions, Inc.

Phoenix, AZ • On-site, Remote

$123K - $161K/yr

Full-time

Medical, Dental, Life, Retirement

Posted 25 days ago


Job description

Join the elite team at QDSS, where our engineers are at the forefront of developing cutting-edge Aerospace, Defense, Space, and Medical Device products. Your work will make a real impact, contributing to the core of engineering solutions that drive technological advancements. 

Quest Defense Systems & Solutions is seeking a Senior Embedded Platform / Multicore Software Engineer to support the development, certification, and performance optimization of platform software for advanced avionics display systems. This role will focus on multicore processor architectures, deterministic execution, Worst-Case Execution Time (WCET) analysis, shared resource management, and real-time operating system technologies within complex embedded aerospace systems.

The ideal candidate will bring extensive experience with multicore embedded platforms, processor and memory architecture, RTOS-based development, and performance analysis in safety-critical environments. This individual will work closely with software, systems, graphics, and hardware engineering teams to evaluate shared resource usage, analyze interference channels, support deterministic execution strategies, and contribute to certification readiness for advanced avionics platforms.

Experience working within DO-178B/C software development environments is required. Practical experience with DEOS or an equivalent safety-critical RTOS is strongly preferred, especially experience involving cache partitioning, resource isolation, and multicore performance management. Familiarity with AC 20-193 guidance for multicore processor certification and/or TSO-C153a is highly desired.

Hybrid work in Phoenix, AZ is preferred; however, qualified remote candidates will be considered. U.S. Citizenship or U.S. Permanent Resident status is required.

Key Responsibilities:   

  • Design, develop, integrate, and support platform software for safety-critical embedded avionics systems operating in multicore environments.
  • Analyze multicore processor behavior, shared resource usage, and system-level performance across CPUs, GPUs, memory subsystems, I/O, FPGAs, storage devices, and other integrated hardware resources.
  • Evaluate processor and memory architecture considerations, including cache hierarchy, memory controllers, DDR/main memory systems, and shared memory access across multiple cores.
  • Perform or support Worst-Case Execution Time (WCET) analysis with consideration for interference from GPUs, I/O subsystems, SSDs, FPGAs, and other shared resources.
  • Utilize performance counters, Quality of Service (QoS) mechanisms, and other monitoring approaches to assess shared resource utilization and performance impacts.
  • Develop and support deterministic execution strategies, including cache partitioning, resource isolation, and resource management within RTOS-based environments.
  • Support DEOS or equivalent RTOS configuration, integration, troubleshooting, and performance optimization activities.
  • Collaborate with software, systems, graphics, and hardware teams to identify and resolve platform-level performance issues and multicore interference concerns.
  • Support software verification, validation, documentation, and certification activities in accordance with safety-critical aerospace development processes.
  • Participate in architecture reviews, technical trade studies, multicore performance assessments, and certification planning discussions.
  • Develop technical documentation and engineering artifacts supporting platform design, performance analysis, and certification objectives.
  • Provide technical guidance to engineering teams on multicore platform behavior, RTOS performance, shared resource management, and deterministic execution.

Required Qualifications: 

  • Bachelor's degree in Computer Engineering, Computer Science, Electrical Engineering, or a related technical discipline.
  • 10+ years of experience developing software for embedded, real-time, or safety-critical systems.
  • Strong programming experience in C and/or C++ within embedded software environments.
  • Experience with DEOS, partitioned real-time operating systems, or other safety-critical RTOS platforms such as  VxWorks, Integrity, LynxOS, PikeOS, or similar.
  • Experience working within DO-178B and/or DO-178C software development environments.
  • Strong understanding of multicore processor architecture and system-level behavior.
  • Experience with processor and memory architecture concepts, including shared memory access, cache hierarchy, memory controllers, and DDR/main memory systems.
  • Experience analyzing embedded software performance, timing behavior, or resource utilization in multicore systems.
  • Understanding of shared resource monitoring and analysis techniques, including performance counters, Quality of Service (QoS), or related approaches.
  • Experience performing or supporting WCET analysis, timing analysis, or deterministic performance evaluation.
  • Ability to evaluate system interference impacts from shared resources such as GPU, I/O, FPGA, storage, memory, or other hardware resources.
  • Strong written and verbal communication skills with the ability to collaborate across software, systems, hardware, graphics, and certification teams.
  • Familiarity with FAA multicore certification guidance, including AC 20-193 and/or experience with TSO-C153a, Integrated Modular Avionics, or IMA platform/module certification considerations.
  • U.S. Citizenship or U.S. Permanent Resident status.

Preferred Qualifications: 

  • Practical experience with DEOS RTOS.
  • Experience with cache partitioning, resource isolation, and resource management in multicore RTOS environments.
  • Experience supporting multicore certification planning, analysis, or compliance activities.
  • Experience supporting avionics display systems, flight deck systems, mission computers, or other aerospace embedded platforms.
  • Experience working with GPU interaction, shared memory behavior, or graphics-related performance impacts within embedded systems.
  • Master's degree in Computer Engineering, Computer Science, Electrical Engineering, or a related technical discipline.Experience in the adoption and/or integration of emerging technologies (e.g., generative AI, automation platforms, digital assistants) into day-to-day operations for continuous improvement.

The QDSS Advantage:  

At QDSS, our advantage is purpose-driven work, collaborative teams, and complex challenges that push boundaries and build lasting impact. You'll grow your career while contributing to mission-critical programs that demand excellence and shape the future. 

What You'll Find Here 

  • Work That Matters - Next-generation, safety- and mission-critical projects where your contributions have real-world impact. 
  • Growth That's Supported - Competitive compensation, employer-matched 401(k), certification assistance, and clear opportunities for advancement. 
  • A Culture That Works - A flexible, collaborative, and people-first environment where teamwork, innovation, and balance are valued. 

Benefits Include 

  • Competitive pay, comprehensive medical/dental/life and disability coverage, 401(k) with employer match, professional development support, and a flexible, friendly workplace.